Model a torch battery of length $l$ to be made up of a thin cylindrical bar of radius $a$ and a concentric thin cylindrical shell of radius $b$,filled in between with an electrolyte of resistivity $\rho$ (see figure). If the battery is connected to a resistance of value $R$,the maximum Joule heating in $R$ will take place for:

  • A
    $R = \frac{2 \rho}{\pi l} \ln \left(\frac{b}{a}\right)$
  • B
    $R = \frac{\rho}{\pi l} \ln \left(\frac{b}{a}\right)$
  • C
    $R = \frac{\rho}{2 \pi l} \left(\frac{b}{a}\right)$
  • D
    $R = \frac{\rho}{2 \pi l} \ln \left(\frac{b}{a}\right)$

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